Showing posts with label System. Show all posts
Showing posts with label System. Show all posts

Monday, August 22, 2011

Reverse Osmosis - The World's Most Popular Drinking Water System

REVERSE OSMOSIS

membrane keyboard

The most popular water purification process on the market today, is Reverse Osmosis. This water purification process was pioneered in the early 1950s  in response to the increasing incidence of kidney disease. RO was designed to replace the filtration function of the kidney, and is still used in the dialysis units of hospitals for this purpose today.

MEMBRANE

Reverse Osmosis utilizes the properties of a membrane to prevent the passage of particles through the membrane. Any particle larger than a water molecule is prevented from passing through the membrane, while the H2O is permitted to flow through to the "pure water" side. Because of the incredibly small pores which the water passes through, pre- filtration is necessary to prevent the plugging up of the membrane pores. Pre-filtration can combine 1, 2 or even 3 pre-filters. These pre-filters are combined to remove larger particles, chlorine, and even some chemicals and pesticides, before the water is subjected to the membrane purification technology. The number and type of pre-filtration depends on the water quality and impurities which are determined to be present in the water. Common pre-filtration includes, sediment filtration, chlorine removal, and chemical absorbent. The purpose of the pre-filtration is to protect and give longer life to the expensive membrane portion of the system.

SEDIMENT is first removed by a 20 micron filter. This filter may be constructed of tight wound cotton string spun around a spool, or it may be a pleated paper filter. By the way, this dot, "." is approximately 50 microns in size. Therefore a 20 micron filter would remove any substance which is half the size of a dot such as this one ". " Sediment, might include particles released from the inside of the pipes which deliver the water to your home, iron which has come out of solution and is now visible in your water as color, or just debris from the water source where your water is drawn from.

GRANULAR ACTIVATED CARBON (GAC) is most often used as the second filter, if the water source is chlorinated, as most municipal water is. Chlorine will destroy the Composite RO membrane quickly, so the chlorine must be removed before the water reaches the RO membrane. GAC filters are simple filters which are filled with small grains of carbon which are highly absorbent and effectively remove chlorine. When the water source does not contain chlorine, the GAC is usually replaced with a sediment filter of perhaps 10 microns of effective filtration, although some GAC filters can act as both a taste and odor filter, as well as a 10 micron sediment filter. It should be noted though, that because a GAC filter does not give "absolute" filtration results for sediment, the water treatment technologist who is applying the application for water treatment should be aware of what objective is to be attained. Is the objective tighter filtration after the 20 micron by placement of a 10 micron filter, or is ithe objective taste and odor removal, such as the rotten egg smell of hydrogen sulfide (H2S)? A GAC will reduce H2S levels where as a pleated or string sediment filter will not.

CARBON BLOCK filters are usually placed as the third pre-filter in a RO filter system. Carbon block filters have the potential to filter down as small as one-half micron. This is very small. As well, carbon blocks are reasonably effective at removing most chemicals and pesticides from the water. The effect of placing the pre-filters in this arrangement contributes to both the increased life expectancy of the RO membrane, as well as reduced pre- filter maintenance. The least expensive of the filters, the 20 micron, takes out the bulky larger substances. The next filter in expense, the GAC, takes out the chlorine and more particles which the 20 micron could not capture, and the most expensive of the pre-filters, the Carbon Block, is left to just absorb the chemicals.

THE MEMBRANE is the heart of the Reverse Osmosis System. As the water is forced through the membrane by water pressure, the impurities are held back and flushed out of the system through the brine water drain line. The membrane is capable of removing upwards of 95% of all impurities, if sufficient feed water pressure is available. Higher feed water pressure increases the efficiency of the membrane. Absolute minimum feed water pressure is 40 psi. If the pressure is not high enough an electric pressure booster pump must be added before the system. 

After the purified water has passed through the RO membrane, it is stored in a small storage tank, waiting to be delivered through a dedicated tap, to the consumer. The tank only holds about 6-8 liters of water at a time. This small tank is designed to fit under the kitchen sink for convenience. Larger tanks can be ordered and easily installed for consumers who desire more water available at a moments notice. It generally takes about 2 hours to fill an empty 8 liter tank. Most RO systems deliver from 35-75 gallons (160-340 liters) every 24 hours, depending on the membrane capacity which came with the RO system, and depending on the water pressure. (more pressure = more purified water)

Finally, on some systems the water may pass through a final carbon filter which is installed in the delivery line between the tank and the faucet, just as a final polish for good tasting water.

CRITICISM is often voiced about RO units because for every liter of purified water, 2-3 liters of brine water are discharged to the drain, to clean the impurities out of the water. This is true. However, this water is not gone! It is simply sent back out to where it came from, the water table. Nothing has been added to the water. The impurities it picked up as it passed through the ground, is returned to the ground.

CONCLUSION: Reverse Osmosis is the number one choice of consumers around the world who wish to provide pure, safe, good tasting drinking water for themselves and their families.                                              

Reverse Osmosis - The World's Most Popular Drinking Water System

MEMBRANE

Sunday, August 21, 2011

Physiologicoanatomical Peculiarities of the Respiratory System of Newborns

The basic tips you need to know in the physiologicoanatomical peculiarities of the respiratory system of newborns is the peculiarities in the nose, sinuses, pharynx, larynx, trachea, bronchi and the lungs.

kerdi membrane

The Peculiarities of the nose at the neonate
• The nose is particularly made up of cartilage
• The nasal meatuses are narrow
• There is no inferior nasal meatus (until 4 years)
• Undeveloped submucosal membrane (until 8-9 years)

MEMBRANE

The peculiarities of sinuses in children
• The maxillary sinus is usually present at birth
• The frontal sinuses begin to develop in early infancy
• The ethmoid and sphenoid sinuses develop later in childhood

The peculiarities of the pharynx at the neonate
• The pharynx is relatively small and narrow
• The auditory tubes are small, wide, straight and horizontal

The peculiarities of the larynx at the neonate
• The larynx is funnel-shaped (in the adult it is relatively round)
• It is relatively long
• The cricoid's cartilage descendents from the level of the fourth cervical vertebra in the infant to that of the sixth in the adult
• The fissure of glottis is narrow and its muscles fatigue soon, vocal ligaments and mucous membrane are very tender and well blood-supplied
• Vocal ligament are relatively short

The peculiarities of the trachea at the neonate
• The length of the trachea is relatively larger (about 4cm unlike in Adult which is 7cm) and wide
• It is composed of 15-17 cartilage rings (the amount does not increase)
• The bifurcation of the trachea lies opposite the third thoracic vertebra in infant and descends to a position opposite the fourth vertebra in the adult
• Mucus membrane is soft, well-blood supplied, but sometime dry,
• It can collapse easily.

The peculiarities of the bronchi at the neonate
• In young children the bronchi are relatively wide
• The right bronchus is a straight continuation of the trachea
• The muscle and elastic fibers are undeveloped
• The bronchi are well blood supplied
• The lobules and segmented bronchus are narrow

The functions of the bronchus
• The ciliated mucus membrane "sweeps" out dust particles
• Transfer of gases into the lungs
• Immunologic function

The functions of the Lung are
• The main function of the lungs is the exchange of Oxygen and carbon dioxide
• To produce surfactant

The peculiarities of the lungs at the neonate
• Size of alveoli is smaller than in adult
• Quantity of alveoli is relatively less than in adult.

Considerable or obvious deviations from these peculiarities indicate abnormalities or further clinical examination.

Physiologicoanatomical Peculiarities of the Respiratory System of Newborns

MEMBRANE

Wednesday, August 17, 2011

EPDM Rubber Single Ply-Membrane Roofing System

Mule Hide EPDM Roofing Systems may be selected for many of the commercial and industrial roofing applications they are needed for. The choice of the system is left up to the specifier; however, there are certain guidelines that should be followed in order to assure that the system that is chosen is the appropriate one. Examples of different systems are listed:

kerdi membrane

·       Mule Hide Ballasted Systems are meant to be used where the slope of the deck will not exceed a 2:12 pitch. They may be installed up to a height of 60 ft. in FM Zones 1 or 2. The specifier must make sure that the deck is capable of withstanding the weight of this system or major damage could happen.

MEMBRANE

·       Mule Hide Fully Adhered Systems are not limited by any slope. They may be installed up to a height of 100 ft. in FM Zones 1 or 2. A minimum fastener pullout of 360 lbs. Is required by local building codes.

·       Mule Hide Mechanically Attached Systems are limited to any decks where the slope will not exceed 18:12 pitch. They may be installed up to a height of 60 ft. in FM Zones 1 or 2. A minimum fastener pullout of 360 lbs. is required for this system.

Mule Hide System Roofing  are not under a warranty if the structure is unable to support the completed roofing system and other anticipated loads identified by the owner's engineer or architect and if the roofing systems surface will be used for something other than the normal commercial roofing conditions, such as plaza decks, waterproofing, or other non-roofing uses or activities.

To ensure that the minimum requirements are met for a Mule Hide warranty, Mule Hide Roofing Systems should not be installed without first consulting the Mule Hide's Technical Department for any special considerations if any conditions exist such as for Mechanically attached and Ballasted Systems, the building height exceeds 60 ft., for an Adhered System, the building height cannot exceed 100 ft., if the building is located within 1500 ft. of a coastline or a large body of water, if the roof is within an area classified as a Zone 3 by FM Loss Prevention Sheet 1-28, if the roof will be subject to a discharge of chemicals or any industrial contaminants.

Other minimum requirements are that the roof has to large openings in the wall which could cause any pressure to occur if they were left open to strong wind, such as aircraft hanger warehouses, loading terminals and large maintenance facilities, buildings should be refrigerated, a freezer or have a high interior humidity such as a swimming pool or produce storage areas.

The Roofing System must also have specific code approvals and/or meet and specific regulations. These might be UL or FM approvals and state and local building codes.

EPDM Rubber Single Ply-Membrane Roofing System

MEMBRANE

Monday, August 8, 2011

Enhanced Natural Thin Stone Installation System Changing the Exterior Veneer Industry

As the popularity and use of Natural Thin Stone grows, installation research and findings are producing enhanced standards that are generating better longer-lasting installations at reduced costs. 

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Historically, the minimum acceptable standards for installing Natural Thin Stone have long been the following:

MEMBRANE

1. Apply sheathing over the studs. This sheathing can be exterior OSB, plywood, exterior grade drywall, wallboard or cementitious board.

2. Staple the building paper to the sheathing. Attach the building paper in horizontal strips. Start at the bottom and overlap 2" (like shingles). Overlap the vertical joints by at least 6". If using flashing or support brackets (anchors), install them before proceeding to the next step.

3. Screw, staple or nail the metal lath to the studs with a maximum horizontal spacing of 16"o.c. Overlap the metal lath at least 1" for horizontal and vertical joints. At corners, overlap the vertical joints at least 16" around the corner to avoid corner cracking. Use barbed galvanized nails at 6"o.c. vertically for exterior work or steel wire furring nails at 4"o.c. for interior work. Minimum nail penetration is 1" into the studs. For steel studs, the lath must be anchored with corrosion resistant screws that have a minimum shank diameter of 0.190".

4. Apply a scratch coat of mortar that is 3/8" to 1/2" thick over and embedding into the metal lath. Use a toothed scraper, notched trowel or small piece of lath to lightly rake horizontal grooves in the scratch coat. Allow the scratch coat to cure for a minimum of 24 hours.

Across the United States, depending on the geography, the climate, the moisture level, Enhanced Installation Techniques and Systems have been developed that offer superior performance. One of those approaches is described below.

Enhanced System for use over Wood or Steel Stud Substrate

In this application, the Lath and Scratch Coat is replaced with Cement Backer Board and Roller-Grade, Flexible Waterproofing Membrane. Using the Cement Backer Board eliminates installer errors that can occur by scratching the initial coat of mortar too deep. If this overly deep scratch occurs, moisture can penetrate the coat and lead to corrosion of the lath and ultimately complete installation system failure. By using the Cement Backer Board and the Roller-Grade Flexible Waterproofing Membrane, this lath and scratch-coat system weakness is eliminated.

Similar to thin set tile installations, movement joints are also used every 8-10 feet. The below graphic illustrates Laticrete's approach using their HydroBan Acrylic Waterproofing Membrane and their 255 MultiMax Thin Set Mortar. This type of system not only offers superior performance, but can reduce total installation costs by 10-30%. Other enhanced products are listed below.

These products have been tested for use in most climates in the United States and proven to provide lasting protection. Many include warranties as well.

Cement Backer Board

·        PermaBase by National Gypsum

Waterproofing Membrane

·        HydroBan by Laticrete

·         Mapelastic Smart by Mapei

·         Sure-Coat by ProSpec

Mortar

·         255 MultiMax by Laticrete

·         Granirapid Mortar by Mapei

·         StayFlex 590 by Prospec

Other Applications

When applying Natural Thin Stone directly to Concrete, Concrete Block or Existing Masonry, adding a Roller-Grade, Flexible Waterproofing Membrane will significantly enhance the soundness of the installation.

Overall these Enhanced Natural Thin Stone Installation Systems improve the quality, longevity and the cost of using the superior product of natural thin stone veneer.

Enhanced Natural Thin Stone Installation System Changing the Exterior Veneer Industry

MEMBRANE